Hybrid QKD–Post-Quantum Cryptography Architectures for Malaysia’s Government and GLC Networks
ID:25
Submission ID:238 View Protection:ATTENDEE
Updated Time:2026-07-22 22:05:26
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Online
Start Time:2026-07-30 11:55 (Asia/Kolkata)
Duration:15min
Session:[S5] Quantum Communications » [S5-1] Quantum Communications
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Abstract
Malaysia’s government and government-linked company (GLC) networks face increasing long-term cybersecurity risks arising from the advent of cryptographically relevant quantum computing. Conventional public-key cryptography, widely deployed in inter-agency backbones, cloud platforms, and critical digital services, is vulnerable to future quantum attacks, necessitating proactive and technically grounded mitigation strategies. This paper proposes a hybrid Quantum Key Distribution (QKD)–Post-Quantum Cryptography (PQC) architecture tailored to Malaysia’s public-sector and GLC environments. The architecture combines standardized PQC algorithms for scalable, internet-facing and cloud-based services with QKD-derived symmetric keys for high-assurance optical corridors linking sensitive sites such as government data centres, financial hubs, and national critical information infrastructure. The proposed framework aligns with international standards from NIST, ETSI, and ITU-T, while addressing Malaysia-specific operational, governance, and regulatory considerations. Through a structured deployment methodology and performance evaluation model, the study demonstrates how hybrid QKD–PQC systems can enhance long-term confidentiality, crypto-agility, and national digital resilience without disrupting existing network operations.
Keywords
Quantum Key Distribution;network operations;artificial intelligence;process innovation
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